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볼 베어링과 스퀴즈 필름 댐퍼로 지지되는 차량용 터보차저의 회전체동역학 해석: 스퀴즈 필름 댐퍼 설계 인자와 회전체 불균형 질량의 영향Rotordynamic Analysis of Automotive Turbochargers Supported on Ball Bearings and Squeeze Film Dampers in Series: Effect of Squeeze Film Damper Design Parameters and Rotor Imbalances

Other Titles
Rotordynamic Analysis of Automotive Turbochargers Supported on Ball Bearings and Squeeze Film Dampers in Series: Effect of Squeeze Film Damper Design Parameters and Rotor Imbalances
Authors
김규만류근
Issue Date
Feb-2018
Publisher
한국트라이볼로지학회
Keywords
automotive turbochargers; ball bearings; squeeze film dampers; rotordynamics; imbalance; 차량용 터보차저; 볼 베어링; 스퀴즈 필름 댐퍼; 회전체동역학; 불균형질량
Citation
한국트라이볼로지학회지, v.34, no.1, pp 9 - 15
Pages
7
Indexed
KCI
Journal Title
한국트라이볼로지학회지
Volume
34
Number
1
Start Page
9
End Page
15
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/7521
DOI
10.9725/kts.2018.34.1.9
ISSN
2713-8011
2713-802X
Abstract
Modern high-performance automotive turbochargers (TCs) implement ceramic hybrid angular contact ball bearings in series with squeeze film dampers (SFDs) to enhance transient responses, thereby reducing the overall emission levels. The current study predicts the rotordynamic responses of the commercial automotive TCs (compressor wheel diameter = ~53 mm, turbine wheel diameter = ~43 mm, and shaft diameter at the bearing locations = ~7 mm) supported on ball bearings and SFDs for various design parameters of SFDs, including radial clearance, axial length, lubricant viscosity, and rotor imbalance conditions (i.e., amplitudes and phase angles) while increasing rotor speed up to 150 krpm. This study validates the predictive rotor finite element model against measurements of mass, polar and transverse moments of inertia, and free-free mode natural frequencies and mode shapes. A nonlinear rotordynamic model integrates nonlinear force coefficients of SFDs to calculate the transient responses of the TC rotor-bearing system. The predicted results show that SFD radial clearances, as well as phase angles of rotor imbalances, have the paramount effect on the dynamic responses of TC shaft motions.
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COLLEGE OF ENGINEERING SCIENCES > DEPARTMENT OF MECHANICAL ENGINEERING > 1. Journal Articles

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